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GRASP – a new project in the field of artificial intelligence

The GRASP project in the field of artificial intelligence, dealt by researchers from the Faculty of Sciences, Novi Sad meets very high and precise criteria of the Science Fund, which finances projects with clear and sustainable goals, a concept and systematic and well-designed methodology.

The research must have a high level of scientific excellence, quality and innovation, and the project “GRASP” (Graphs in Space: Graph Embeddings for Machine Learning on Complex Data) deals with the problems of graphs, i.e. networks, in the “traditional” form of data – table, with special reference to the application of artificial intelligence techniques. Graphs, or networks, are one of the most important ways to understand the world around us. The points (nodes) of a graph can represent entities (e.g. people), while the connections (branches) between points express a relationship or interaction (e.g. acquaintance) between them. In this way, almost every phenomenon, from the level of atoms to galaxy levels, can be modelled in the form of a graph. On the other hand, one of the key operations available on graphs is their transformation into a “traditional” form of data – a table. In a table, entities are represented by rows, while columns indicate attributes that describe entities. If we go back to people, for example, the attributes that describe them can be name, surname, height, weight, etc.

The field of graph embedding deals with ways to transform graphs into tabular form, which is important because it allows the application of “traditional” tabular techniques of artificial intelligence (more precisely, machine learning) and data analysis to achieve insights that would be difficult or impossible by direct observation of networks. For example, by using well-known tabular techniques on an interaction graph of a Facebook user, we can (1) classify users into some categories of interest, (2) identify communities, (3) recommend “friends,” and (4) predict whether two users will interact in the future.

Improving graph mapping techniques in this project will enable researchers and experts from Serbia and the world to apply machine learning and data analysis techniques in areas where this was not previously possible or did not give satisfactory results, primarily in scientific research (e.g. bioinformatics, sociology, economics), but also in technology and industry (eg predictive analysis of energy, telecommunications and transport networks), education (e.g. predictive analytics based on data from e-learning systems), and society in general (e.g. improved/new services of social networking sites, or even new types of social networking that were not possible before).

The project will last for two years, with a budget of over 120 thousand Euros, and the team consists of both experienced and young researchers from the Faculty of Sciences, Novi Sad, with an emphasis on researchers at an early stage of their careers. All participants are employed at the Department of Mathematics and Informatics, the Chair of Computer Science and the Chair of Information Technology and Systems. The project leader is Miloš Radovanović, PhD and the team also includes: Mirjana Ivanović, PhD, Vladimir Kurbalija, PhD,  Miloš Savić, PhD,  Brankica Bratić, Nemanja Milošević, Dušica Knežević and Aleksandar Tomčić.

Magnetite nanoparticles: a new approach for arsenic removal for small water utilities

  • Project title: Magnetite nanoparticles: a new approach for arsenic removal for small water utilities
  • Project number: EU4TPOC-1592995466
  • Institutions participating in the project: Faculty of Sciences (Novi Sad)
  • Status in the project: Coordinator
  • Project coordinator: Malcolm Watson (Department of Chemistry, Biochemistry and Environmental Protection)
  • Project type: EU4Tech Proof of Concept
  • Period of realization: 01.09.2020.-31.12.2021
  • Project website: tba
  • Project summary: https://www.dropbox.com/s/j3wgn2y27c0uc9y/MagneticNanoparticlesVideo.mp4?dl=0

Nongreen revolution in industrial packaging with fungal biotechnology (FungPack)

  • Project title: Nongreen revolution in industrial packaging with fungal biotechnology (FungPack)
  • Project number: EU4TPOC-1592957126
  • Institutions participating in the project: Faculty of Sciences (Novi Sad)
  • Status in the project: Coordinator
  • Project leader: Maja Karaman (Department of Biology and Ecology)
  • Project type: EU4Tech Proof of Concept
  • Period of realization: 2020-2021
  • Promo video: https://drive.google.com/file/d/1hUI92NkTm1RY9zIAx04U7vWNszwPhwE3/view

Mito-Fert-Signature: a new prognostic/diagnostic tool to detect male (in) fertility using mitochondrial dynamics markers in spermatozoa

  • Project title: Mito-Fert-Signature: a new prognostic/diagnostic tool to detect male (in) fertility using mitochondrial dynamics markers in spermatozoa
  • Project number: 159300853
  • Institutions participating in the project: Faculty of Sciences (Novi Sad), Faculty of Medicine University of Belgrade, Clinical Center of Serbia (Narodni front, GAK)
  • Status in the project: Coordinator
  • Project coordinator: Silvana Andrić
  • Project type: EU4Tech Proof of Concept
  • Period of realization: 01.09.2020.-31.08.2021
  • Project website: tba (currently available: https://www.youtube.com/watch?v=uKijzdHVcPI&feature=youtu.be)

Application of Hydroinformatics in Water Resource Management to Improve Arsenic Risk Assessment and Remediation Approaches for Serbian Water Sources (HYDRA)

  • Project title: Application of Hydroinformatics in Water Resource Management to Improve Arsenic Risk Assessment and Remediation Approaches for Serbian Water Sources (HYDRA)
  • Project number: 6485164
  • Institutions participating in the project: Faculty of Sciences (Novi Sad) and KWR Water Research Institute, Holland
  • Status in the project: Coordinator
  • Project leader: Jasmina Agbaba
  • Project type: Science Fund of the Republic of Serbia– Serbian Science and Diaspora Collaboration Programme: Knowledge Exchange Vouchers
  • Period of realization: 2020-2023
  • Project website: hydra.pmf.uns.ac.rs

Boosting Excellence of UNSPMF NPG in Neutrino Physics Research (GENESIS)

  • Project title: Boosting Excellence of UNSPMF NPG in Neutrino Physics Research (GENESIS)
  • Project number: 6445919
  • Institutions participating in the project: Faculty of Sciences (Novi Sad) and Argonne National Laboratory, USA
  • Status in the project: Coordinator
  • Project leader: Nataša Todorović
  • Project type: Science Fund of the Republic of Serbia – Serbian Science and Diaspora Collaboration Programme: Knowledge Exchange Vouchers
  • Period of realization: 2020-2021

Molecular Methods for Supporting Microalgae as Biofactories (MORAB)

  • Project title: Molecular Methods for Supporting Microalgae as Biofactories (MORAB)
  • Project number: 6445349
  • Institutions participating in the project: Faculty of Sciences (Novi Sad) and School of Biological Sciences, University of Queensland, Australia
  • Status in the project: Coordinator
  • Project leader: Jelica Simeunović
  • Project type: Science Fund of the Republic of Serbia– Serbian Science and Diaspora Collaboration Programme: Knowledge Exchange Vouchers
  • Period of realization: 2020-2022

New Liquid-based Formulations in Protection Against Causes of Wheat Diseases in the Pannonian Basin Region

  • Project title: New Liquid-based Formulations in Protection Against Causes of Wheat Diseases in the Pannonian Basin Region
  • Institutions participating in the project: Faculty of Sciences (Novi Sad) and Faculty of Agriculture (Osijek)
  • Status in the project: Partner
  • Project leader: Milan Vraneš
  • Project type: Bilateral Cooperation Serbia – Croatia
  • Period of realization: 2019-2020